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Method of manufacturing liquid crystal display device and one drop fill apparatus used for the same

a technology drop filling device, which is applied in the direction of chemistry apparatus and processes, identification means, instruments, etc., can solve the problems of reducing the production efficiency affecting the product quality of the product, and reducing the defect rate of liquid crystal display device. , to achieve the effect of stable manufacturing process and reduced product defects

Inactive Publication Date: 2005-06-16
SHARP KK
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0008] It is an object of this invention to provide a method of manufacturing a liquid crystal display device using a one drop fill method that enables reduction of product defects of the liquid crystal display device and realization of a stable manufacturing process, and a one drop fill apparatus used for the same.
[0010] According to this invention, in the method of manufacturing a liquid crystal display device in which the liquid crystal is sealed between the substrates using the one drop fill method, products defects of the liquid crystal display device are reduced and a stable manufacturing process can be realized.

Problems solved by technology

However, in the vacuum injection technique, it becomes more difficult to evenly inject liquid crystal into the gap as the substrate size increases.
Therefore, if the positions where the liquid crystal is dropped are too close to the seal material, the liquid crystal spread by the lamination of the substrates may break the seal material before hardening and may leak out.
Moreover, since the components of the seal material before hardening easily elute, if the liquid crystal contacts the seal material before hardening, the seal material components may contaminate and deteriorate the liquid crystal.
On the other hand, if the positions where the liquid crystal is dropped are too far from the seal material, the liquid crystal cannot spread sufficiently to the edge of the seal material, generating a bubble area in which the liquid crystal is not injected.
If the liquid crystal contaminated and deteriorated by the seal material components or the bubble reaches the display area, an area of uneven display or display defect is generated and the display quality is lowered.

Method used

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  • Method of manufacturing liquid crystal display device and one drop fill apparatus used for the same

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first embodiment

[0022] A method of manufacturing a liquid crystal display device using a one drop fill method and a one drop fill apparatus according to a first embodiment of this invention will now be described with reference to FIG. 1A to FIG. 6. A substrate laminating step and a liquid crystal injection step for a liquid crystal display device will be described with reference to FIGS. 1A to 1E. As shown in FIG. 1A, a seal material 10 made of, for example, a photosensitive hardening resin, is applied in a frame-shape, for example, on an outer peripheral part of a TFT substrate 2 of two substrates 2 and 4 on which an alignment films are formed. The seal material 10 is formed to a height of approximately 30±5 μm on the TFT substrate 2. On the CF substrate 4 arranged to face the TFT substrate 2, pillar spacers made of a resin are formed or spherical spacers are scattered and adhered.

[0023] Next, using a dispenser (not shown), a predetermined quantity of liquid crystal 22 is dropped at predetermined...

second embodiment

[0051] Now, a method of manufacturing a liquid crystal display device using a one drop fill method and a one drop fill apparatus used in the method according to a second embodiment of this invention will be described with reference to FIG. 7A to FIG. 9. FIGS. 7A and 7B are sectional views showing the spreading state of the liquid crystal 22 on the TFT substrate 2 and the CF substrate 4 with their substrate surfaces flexed and distorted. FIG. 7A is a sectional view showing a state where the liquid crystal 22 is spreading in the cell gap between the TFT substrate 2 and the CF substrate 4. FIG. 7B is a sectional view showing a state where the liquid crystal 22 is spread within the frame of the seal material 10. Constituent elements having the same effects and functions as the constituent elements in the method of manufacturing a liquid crystal display device and the one drop fill apparatus 60 used for the method of the first embodiment shown in FIG. 1A to FIG. 4 are denoted by the same...

third embodiment

[0061] A method of manufacturing a liquid crystal display device using a one drop fill method and a one drop fill apparatus used for the method according to a third embodiment of this invention will now be described with reference to FIG. 10A, FIG. 10B, FIG. 11A and FIG. 11B. While the one drop fill method is applied to each liquid crystal display panel 28 in the above-described first and second embodiments, this embodiment is characterized in that the one drop fill method is used on a multiple-panel substrate (mother substrate) for simultaneously manufacturing plural liquid crystal display panels 28. FIG. 10A is a sectional view showing a state where a mother substrate 66 for TFT substrate and a mother substrate 68 for CF substrate are set on a mother substrate lower plate 70 and a mother substrate upper plate 72, respectively. Since the mother substrate 66 for TFT substrate and the mother substrate 68 for CF substrate have a size large enough to provide, for example, four liquid c...

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Abstract

A method of manufacturing a liquid crystal display device in which liquid crystal is sealed between substrates using a one drop fill method, and a one drop fill apparatus used for the method, and particularly a method of manufacturing a liquid crystal display device using a one drop fill method that enables reduction of product defects of the liquid crystal display device and realization of a stable production process, and a one drop fill apparatus used for the method are provided. Dropping of liquid crystal is controlled so that the dropping quantity of the liquid crystal is reduced in an area including the vicinity of a seal material on the left side with a relatively narrow cell gap width while the dropping quantity of the liquid crystal is increased in an area including the vicinity of the seal material on the right side with a relatively broad cell gap width. Alternatively, dropping of the liquid crystal is controlled so that the number of times the liquid crystal is dropped is reduced in the area including the vicinity of the seal material on the left side while the number of times the liquid crystal is dropped is increased in the area including the vicinity of the seal material on the right side without changing the dropping quantity of one drop.

Description

BACKGROUND OF THE INVENTION [0001] 1. Field of the Invention [0002] This invention relates to a method of manufacturing a liquid crystal display device in which liquid crystal is sealed between substrates by using a one drop fill method, and a one drop fill apparatus used for the same. [0003]2. Description of the Related Art [0004] A color liquid crystal display device of an active matrix type has a TFT substrate formed a thin film transistor (TFT) or the like on an insulating substrate, and a CF substrate with a color filter (CF) or the like formed thereon. At a substrate attaching process in a liquid crystal display device manufacturing process, a seal material is applied to the outer peripheral part of either one of the TFT substrate or CF substrate. Next, the two substrates are superimposed and then pressurized and laminated by using a substrate laminating apparatus such as a pressure-heating apparatus or vacuum heating apparatus, thus forming a laminated substrate having a pred...

Claims

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Application Information

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IPC IPC(8): G02F1/13B32B37/24G02F1/1341G09F9/00
CPCB32B37/24B32B2457/202B32B2457/20B32B2309/68G02F1/13
Inventor MAKIMOTO, SHOTAMURATA, SATOSHISUGIMURA, HIROYUKIKIDA, TETSUYASUZUKI, HIDEHIKO
Owner SHARP KK
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